Universite Nord de France, CNRS, MALDI Imaging Team, Laboratoire de Neuroimmunologie et Neurochimie Evolutives, Universite Lille 1, Lille, France.
Med Sci Monit. 2010 Sep;16(9):BR293-9.
Since its introduction 10 years ago by Caprioli and associates, MALDI mass spectrometry imaging has enabled spatial analysis of drugs, lipids, peptides, and polypeptides. In polypeptides, the detectable mass range is limited to small proteins with a mass less than 25 kDa. This is a limitation, as many proteins, including cytokines, growth factors, enzymes, and receptors have molecular weights, exceeding 25 kDa. In the present work, we report the development of a novel strategy to observe higher mass proteins up to 30 kDa.
MATERIAL/METHODS: We investigated the development of sample preparation methods based on hexafluoroisopropanol (1,1,1,3,3,3-hexaluoro-2-propanol) and 2,2,2-trifluoroethanol solvents for protein solubilization optimized for high-mass proteins.
We were, for the first time in mass spectrometry imaging, able to detect to proteins up to 70 kDa directly from tissue. These developments indicate future avenues by which the sensitivity of protein mass spectrometry imaging can be further improved. We applied these developments to ovarian cancer and demonstrate that protein are similar to that which can be obtained using 2D gel based analyses.
Increasing the possibility of detecting proteins and high-mass proteins is key for developing direct tissue proteomics and especially any potential functional investigation. These data will open the door of a novel step in mass spectrometry imaging.
自 10 年前 Caprioli 及其同事引入 MALDI 质谱成像以来,它已经能够对药物、脂质、肽和多肽进行空间分析。在多肽中,可检测的质量范围限于质量小于 25 kDa 的小蛋白质。这是一个限制,因为许多蛋白质,包括细胞因子、生长因子、酶和受体,其分子量超过 25 kDa。在本工作中,我们报告了一种观察高达 30 kDa 更高质量蛋白质的新策略的发展。
材料/方法:我们研究了基于六氟异丙醇(1,1,1,3,3,3-六氟-2-丙醇)和 2,2,2-三氟乙醇溶剂的样品制备方法的发展,这些溶剂可优化用于高质量蛋白质的蛋白质溶解。
我们首次在质谱成像中直接从组织中检测到高达 70 kDa 的蛋白质。这些发展表明,未来可以进一步提高蛋白质质谱成像的灵敏度。我们将这些发展应用于卵巢癌,并证明蛋白质与使用基于 2D 凝胶的分析可以获得的蛋白质相似。
提高检测蛋白质和高分子量蛋白质的可能性是发展直接组织蛋白质组学的关键,特别是任何潜在的功能研究。这些数据将为质谱成像的一个新步骤打开大门。